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Design and Topology Optimization of 3D-Printed Wax Patterns for Rapid Investment Casting

机译:快速熔模铸造3D打印蜡模的设计和拓扑优化

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Traditional investment casting (IC), also known as lost-wax casting, suffers from high tooling cost and long lead-time during fabrication of wax patterns. In recent years, rapid investment casting (RIC) based on AM has become widely accepted in casting foundries due to rapid production of patterns without any tooling requirements. Direct AM production of wax patterns is not only cost-efficient for low volume production but also capable of creating freeform and highly complex geometries that are otherwise extremely difficult or too expensive to cast conventionally. Such advantages provide unlimited opportunities in the cast part design and enable the use of advanced design tools especially advanced optimization tools like topology optimization (TO). In this study, knowledge-based design guidelines for rapid investment casting are developed through streamlined integration of TO with design for investment casting and design for AM principles. Specifically, TO routine based on Solid Isotropic Material with Penalization (SIMP) method using Abaqus Topology Optimization Module (ATOM) has been developed for both material extrusion and investment casting constraints. Part design optimization is demonstrated for this new technique and is validated by a case study using heat-treated ASTM A216 WCB cast carbon steel parts. AM patterns for investment casting are produced using commercially available wax filaments. Wax material extrusion parameters are identified for optimal AM accuracy and surface finish.
机译:传统的熔模铸造(IC),也称为失蜡铸造,在蜡模的制造过程中具有较高的模具成本和较长的交货时间。近年来,基于AM的快速熔模铸造(RIC)由于无需任何工具要求即可快速生产型模,已在铸造厂中得到广泛接受。蜡模的直接AM生产不仅对于小批量生产而言具有成本效益,而且还能够产生自由形式和高度复杂的几何形状,这些几何形状否则将非常困难或常规铸造成本太高。这些优势为铸件设计提供了无限的机会,并允许使用高级设计工具,尤其是诸如拓扑优化(TO)之类的高级优化工具。在这项研究中,通过将TO与精铸设计和AM原理设计精简集成,开发了基于知识的快速精铸设计指南。具体而言,针对材料挤压和熔模铸造约束,已经开发了基于使用Abaqus拓扑优化模块(ATOM)的带有罚分的固体各向同性材料(SIMP)方法的TO例程。这项新技术证明了零件设计的最优化,并通过使用热处理过的ASTM A216 WCB铸碳钢零件的案例研究进行了验证。使用市售的蜡丝生产用于熔模铸造的AM图案。确定蜡材料的挤出参数以获得最佳的AM精度和表面光洁度。

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